ViBE-Z: a framework for 3D virtual colocalization analysis in zebrafish larval brains

Ronneberger, O; Liu, K; Rath, M; Rueβ, D; Mueller, T; Skibbe, H; Drayer, B; Schmidt, T; Filippi, A; Nitschke, R; Brox, T; Burkhardt, H; Driever, W

HERO ID

1450096

Reference Type

Journal Article

Year

2012

Language

English

PMID

22706672

HERO ID 1450096
In Press No
Year 2012
Title ViBE-Z: a framework for 3D virtual colocalization analysis in zebrafish larval brains
Authors Ronneberger, O; Liu, K; Rath, M; Rueβ, D; Mueller, T; Skibbe, H; Drayer, B; Schmidt, T; Filippi, A; Nitschke, R; Brox, T; Burkhardt, H; Driever, W
Journal Nature Methods
Volume 9
Issue 7
Page Numbers 735-742
Abstract Precise three-dimensional (3D) mapping of a large number of gene expression patterns, neuronal types and connections to an anatomical reference helps us to understand the vertebrate brain and its development. We developed the Virtual Brain Explorer (ViBE-Z), a software that automatically maps gene expression data with cellular resolution to a 3D standard larval zebrafish (Danio rerio) brain. ViBE-Z enhances the data quality through fusion and attenuation correction of multiple confocal microscope stacks per specimen and uses a fluorescent stain of cell nuclei for image registration. It automatically detects 14 predefined anatomical landmarks for aligning new data with the reference brain. ViBE-Z performs colocalization analysis in expression databases for anatomical domains or subdomains defined by any specific pattern; here we demonstrate its utility for mapping neurons of the dopaminergic system. The ViBE-Z database, atlas and software are provided via a web interface.
Doi 10.1038/nmeth.2076
Pmid 22706672
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English